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    • 51. 发明申请
    • Process of Gas Containment
    • 气体封闭过程
    • US20160067649A1
    • 2016-03-10
    • US14786912
    • 2014-04-24
    • CARBON CYCLE LIMITED
    • David Charles Sevier
    • B01D53/14B01D53/18
    • B01D53/1425A01G9/18B01D53/1475B01D53/1487B01D53/18B01D2252/102B01D2252/103B01D2252/2021B01D2256/245B01D2257/406B01D2257/504B01D2257/70B01D2257/80B01D2258/06Y02P60/24
    • A process for capturing a target gas from a flowing gas mixture by use of at least a pair of capture and release sections together with a discharge section is described. The at least one pair of capture and release sections includes a target gas capture section and a target gas release section in fluid communication with one another. The target gas discharge section is in fluid communication with the target gas capture section. The capture, release and discharge sections have a high surface area medium and a fluid contained therein, and include a fluid entry point at a first end and a collection tank at a second end. The process comprises the steps of: directing a gas mixture through the target gas release section followed by the target gas capture section, wherein the fluid contained within the pair of capture and release sections allows for the target gas to be contained within a defined area between the capture and release sections; directing fluid through a first recirculation path from the collection tank of the target gas capture section to the entry point of the target gas release section and directing fluid from the collection tank of the target gas release section to the entry point of the target gas capture section, thereby recycling the fluid. The pair of capture and release sections include a concentration gradient of at least one of the target gas and the fluid. Further steps are: directing the fluid through a flow path, from the collection tank of the target gas capture section, heating the fluid and passing it through the discharge section to thereby release the target gas from the fluid within the discharge section due to the reduced solubility; and directing the fluid depleted of the target gas through a second recirculation path from the collection tank of the discharge section, and then to the entry point of the capture section. An apparatus is also disclosed.
    • 描述了通过使用至少一对捕获和释放部分与排出部分一起从流动气体混合物捕获目标气体的方法。 至少一对捕获和释放部分包括彼此流体连通的目标气体捕获部分和目标气体释放部分。 目标气体排出部与目标气体捕获部流体连通。 捕获,释放和排出部分具有高表面积介质和其中所含的流体,并且包括在第一端处的流体入口点和在第二端处的收集罐。 该方法包括以下步骤:引导气体混合物通过目标气体释放部分,然后是目标气体捕获部分,其中包含在一对捕获和释放部分内的流体允许目标气体包含在 捕获和释放部分; 引导流体通过从目标气体捕获部分的收集罐到目标气体释放部分的入口的第一再循环路径,并将流体从目标气体释放部分的收集罐引导到目标气体捕获部分的入口点 ,从而回收流体。 一对捕获和释放部分包括至少一种目标气体和流体的浓度梯度。 进一步的步骤是:将流体引导通过目标气体捕获部分的收集槽的流动路径,加热流体并使其流过排放部分,从而由于减少了排放部分中的流体而释放目标气体 溶解度; 并将目标气体耗尽的流体引导通过来自排出部分的收集罐的第二再循环路径,然后到达捕获部分的入口点。 还公开了一种装置。
    • 56. 发明授权
    • Photobioreactor systems and methods for treating CO2-enriched gas and producing biomass
    • 用于处理富CO2气体和生产生物质的光生物反应器系统和方法
    • US08110395B2
    • 2012-02-07
    • US11818962
    • 2006-07-10
    • John J. LewnardXiaoxi Wu
    • John J. LewnardXiaoxi Wu
    • C12M1/00
    • C12M21/02B01D53/84B01D2251/95B01D2257/504C02F3/32C02F2103/18C12M23/56C12M43/04C12N1/12Y02A50/2358Y02C10/02Y02C10/04Y02P20/59Y02P60/24Y02W10/37
    • Certain embodiments and aspects of the present invention relate to a photobioreactor including covered photobioreactor units through which a liquid medium stream and a gas stream flow. The liquid medium comprises at least one species of phototrophic organism therein. Certain methods of using the photobioreactor system as part of fuel generation system and/or a gas-treatment process or system at least partially remove certain undesirable pollutants from a gas stream. In certain embodiments, a portion of the liquid medium is diverted from a photobioreactor unit and reintroduced upstream of the diversion position. In certain embodiments, the disclosed photobioreactor system, methods of using such systems, and/or gas treatment apparatus and methods provided herein can be used as part of an integrated combustion method and system, wherein photosynthetic organisms used within the photobioreactor are harvested from the photobioreactor, processed, and used as a fuel source for a combustion system such as an electric power plant.
    • 本发明的某些实施方案和方面涉及包含覆盖的光生物反应器单元的光生物反应器,液体介质流和气体流通过该光生物反应器单元流动。 液体介质中含有至少一种光养生物。 使用光生物反应器系统作为燃料生成系统和/或气体处理过程或系统的一部分的某些方法至少部分地从气流中去除某些不需要的污染物。 在某些实施例中,液体介质的一部分从光生物反应器单元转移并重新引入转向位置的上游。 在某些实施方案中,所公开的光生物反应器系统,使用这种系统的方法和/或气体处理装置和方法可用作整合的燃烧方法和系统的一部分,其中光生物反应器内使用的光合生物体从光生物反应器 被处理并用作燃料系统如燃料发电厂的燃料源。
    • 60. 发明申请
    • Method and a device for determination of the actual photosynthesis in plants
    • 用于确定植物中实际光合作用的方法和装置
    • US20050022264A1
    • 2005-01-27
    • US10494900
    • 2002-11-07
    • Anne Fanger
    • Anne Fanger
    • A01G7/00G01J1/00G01J3/00G01N33/497G01N33/50H01J3/14H01J5/16H01J40/14
    • A01G7/00Y02P60/24
    • The invention relates to a novel method for simple and direct determination of the actual photosynthesis (the gross photosynthesis), the light respiration and the uptake and emission of CO2, O2 and H2O in connection with photosynthesis and respiration in plants. The invention also relates to a device for carrying out the method and use of the method for evaluation of the growth of algae and plants. The method of the invention is based on the new recognition that photosynthesis is not a chemical process but rather a one step physical reaction. The method is very different from the methods applied so far and much more accurate than these known methods. It has a great potential utility in agriculture and forestry. The method can be worked from great heights using aeroplanes or satellites. It can be used in all types of apparatuses, computers and computer programs designed for estimation of plant productivity and photosynthesis.
    • 本发明涉及一种用于简单和直接测定植物中光合作用和呼吸的实际光合作用(总光合作用),轻呼吸和CO2,O2和H2O的吸收和排放的新方法。 本发明还涉及一种用于实施用于评估藻类和植物生长的方法和方法的装置。 本发明的方法是基于光合作用不是化学过程而是一步物理反应的新认识。 该方法与迄今为止应用的方法非常不同,并且比这些已知方法更准确。 它在农业和林业方面具有很大的潜在效用。 该方法可以使用飞机或卫星从高处起作用。 它可用于设计用于估计植物生产力和光合作用的所有类型的设备,计算机和计算机程序。